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Reclaiming produced water for beneficial use: salt removal by electrodialysis

机译:回收生产水以利于使用:通过电渗析去除盐分

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This paper addresses the use of electrodialysis (ED) to remove salts from produced water (PW) to meet drinking water, irrigation water, and/or livestock watering standards. Specifically, ED treatment of five simulated PWs with low (CO, TX, and WY) and high (UT and OK) total dissolved solids (TDS) concentrations and varying cations and anions distributions was evaluated at three voltage settings. Both the absolute and percent TDS removal were found to increase linearly with voltage for all five waters. With Neosepta(R) CMX-SB/AMX-SB membranes, the cations/anions were generally found to be removed in the following order (from fastest to slowest): Ca2+ approximate to Mg2+ > K+ > Na+ and SO42- > HCO3- > Cl-. Also, the feed concentrations of the individual anions appeared to affect their removal rates at low applied voltage settings. Finally, CO, TX, and WY waters were treatable to drinking water and livestock watering standards after 1 h at 6.5 V. Although UT water was treatable to the same standards after 2 h at 9.8 V, the stack power needed to treat the UT water was approximately 23 times higher than that required to treat each of the three low TDS waters. OK water was deemed untreatable to those standards under the laboratory operating conditions. (C) 2004 Elsevier B.V. All rights reserved.
机译:本文介绍了使用电渗析(ED)去除采出水(PW)中的盐以满足饮用水,灌溉水和/或牲畜饮水标准的问题。具体而言,在三种电压设置下,评估了五种模拟的PW的ED处理,这些PW具有低(CO,TX和WY)和高(UT和OK)总溶解固体(TDS)浓度以及变化的阳离子和阴离子分布。发现所有五个水的TDS绝对去除率和百分比去除率均随电压线性增加。对于Neosepta(R)CMX-SB / AMX-SB膜,通常发现阳离子/阴离子的去除顺序如下(从最快到最慢):Ca2 +近似于Mg2 +> K +> Na +和SO42-> HCO3-> Cl-。同样,在低施加电压设置下,单个阴离子的进料浓度似乎会影响其去除率。最后,CO,TX和WY水在6.5 V下经过1 h后可以达到饮用水和家畜饮水标准。尽管UT水在9.8 V下经过2 h后可以达到相同的标准,但是处理UT水所需的堆功率比处理三种低TDS水所需的水大约高23倍。在实验室操作条件下,OK水被认为无法达到那些标准。 (C)2004 Elsevier B.V.保留所有权利。

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